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Aspen Physical Property System - Physical Property Models

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The equation for the Watson model is:<br />

Where:<br />

�vapHi * (T1) = Heat of vaporization at temperature T1<br />

Linear extrapolation of �vapHi * versus T occurs below the minimum<br />

temperature bound, using the slope at the temperature bound.<br />

Parameter<br />

Symbol Default Lower Upper Units<br />

Name/Element<br />

Limit Limit<br />

TC T ci — 5.0 2000.0 TEMPERATURE<br />

DHVLWT/1 � vapH i * (T1) — 5x10 4<br />

192 2 Thermodynamic <strong>Property</strong> <strong>Models</strong><br />

5x10 8<br />

MOLE-ENTHALPY<br />

DHVLWT/2 T 1 — 4.0 3500.0 TEMPERATURE<br />

DHVLWT/3 a i 0.38 -2.0 2.0 —<br />

DHVLWT/4 b i 0 -2.0 2.0 —<br />

DHVLWT/5 T min 0 0.0 1500.0 TEMPERATURE<br />

PPDS Heat of Vaporization Equation<br />

The PPDS equation is used to calculate heat of vaporization when THRSWT/4<br />

is set to 301. See Pure Component Temperature-Dependent Properties for<br />

details.<br />

The equation for the PPDS model is:<br />

where R is the gas constant.<br />

Linear extrapolation of �vapHi * versus T occurs outside of temperature bounds,<br />

using the slope at the temperature bound.<br />

Parameter<br />

Name/Element<br />

Symbol Default MDS Lower<br />

Limit<br />

Upper<br />

Limit<br />

Units<br />

TC T ci — 5.0 2000.0 TEMPERATURE<br />

DHVLDS/1 C 1i — — — — —<br />

DHVLDS/2 C 2i 0 — — — —<br />

DHVLDS/3 C 3i 0 — — — —<br />

DHVLDS/4 C 4i 0 — — — —<br />

DHVLDS/5 C 5i 0 — — — —<br />

DHVLDS/6 C 6i 0 — — TEMPERATURE<br />

DHVLDS/7 C 7i 1000 — — TEMPERATURE

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